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Glycogen Distribution in the Microwave-Fixed Mouse Brain Reveals Heterogeneous Astrocytic Patterns

机译:微波固定小鼠大脑中的糖原分布揭示了异质的星形胶质细胞模式。

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In the brain, glycogen metabolism has been implied in synaptic plasticity and learning, yet the distribution of this molecule has not been fully described. We investigated cerebral glycogen of the mouse by immunohistochemistry (IHC) using two monoclonal antibodies that have different affinities depending on the glycogen size. The use of focused microwave irradiation yielded well-defined glycogen immunoreactive signals compared with the conventional periodic acid-Schiff method. The IHC signals displayed a punctate distribution localized predominantly in astrocytic processes. Glycogen immunoreactivity (IR) was high in the hippocampus, striatum, cortex, and cerebellar molecular layer, whereas it was low in the white matter and most of the subcortical structures. Additionally, glycogen distribution in the hippocampal CA3-CA1 and striatum had a 'patchy' appearance with glycogen-rich and glycogen-poor astrocytes appearing in alternation. The glycogen patches were more evident with large-molecule glycogen in young adult mice but they were hardly observable in aged mice (1-2 years old). Our results reveal brain region-dependent glycogen accumulation and possibly metabolic heterogeneity of astrocytes.
机译:在大脑中,糖原代谢已暗示在突触可塑性和学习中,但尚未充分描述该分子的分布。我们使用两种单克隆抗体通过免疫组织化学(IHC)研究了小鼠的脑糖原,这些单克隆抗体根据糖原的大小具有不同的亲和力。与传统的高碘酸-席夫法相比,聚焦微波辐射的使用产生了明确的糖原免疫反应信号。 IHC信号呈点状分布,主要分布在星形细胞过程中。糖原免疫反应性(IR)在海马,纹状体,皮层和小脑分子层中较高,而在白质和大多数皮质下结构中则较低。此外,海马CA3-CA1和纹状体中的糖原分布呈“斑片”状,富含糖原的星形胶质细胞和缺乏糖原的星形胶质细胞交替出现。大分子糖原在年轻成年小鼠中糖原斑更明显,但在老年小鼠(1-2岁)中几乎观察不到。我们的研究结果揭示了星形胶质细胞的大脑区域依赖性糖原积累和可能的代谢异质性。

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